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Malnutrition in Sickle Cell Anemia: Implications for Infection, Growth, and Maturation
Hyacinth I Hyacinth1, Oluwatoyosi A Adekeye, Christopher S Yilgwan
1Morehouse School of Medicine.
Insights
Sickle cell anemia (SCA) management requires nutritional intervention due to undernutrition. Nutritional support improves clinical outcomes, growth, and sexual maturation in affected individuals.
Area of Science:
- Hematology
- Nutritional Science
- Genetics
Background:
- Sickle cell anemia (SCA) is a genetic disorder predominantly affecting individuals of African and Hispanic descent.
- SCA complications like slowed growth and poor immunity are linked to undernutrition.
- Mechanisms include hypermetabolism, reduced intake, and increased energy expenditure.
Purpose of the Study:
- To explore the role of nutritional intervention in managing sickle cell anemia.
- To highlight the impact of undernutrition on SCA patient outcomes.
Main Methods:
- Review of proposed mechanisms linking SCA to undernutrition.
- Analysis of existing studies on nutritional supplementation in SCA management.
Main Results:
- Undernutrition in SCA is multifactorial, increasing resting energy expenditure.
- Nutritional interventions show promise in improving growth and clinical outcomes.
- Further research is needed to optimize nutritional strategies.
Conclusions:
- Nutritional intervention is a critical component in sickle cell anemia management.
- The accessibility and broad reach of nutritional approaches are significant.
- Addressing nutritional deficiencies is vital for improving the quality of life for SCA patients.
Abstract:
Sickle cell anemia (SCA) is a genetic disease that affects mostly individuals of African and/or Hispanic descent, with the majority of cases in sub-Saharan Africa. Individuals with this disease show slowed growth, delayed sexual maturity, and poor immunologic function. These complications could partly be explained by the state of undernutrition associated with the disease. Proposed mechanism of undernutrition include protein hypermetabolism, decreased dietary intake possibly from interleukin-6-related appetite suppression, increased cardiac energy demand/expenditure, and increased red cell turnover. All the above mechanisms manifest as increased resting energy expenditure. Nutritional intervention utilizing single or multiple nutrient supplementation has led to improved clinical outcome, growth, and sexual maturation. Studies are currently underway to determine the best possible approach to applying nutritional intervention in the management of SCA. Management of SCA will, of necessity, involve a nutritional component, given the sociodemographic distribution of those most affected by the disease, the ease of a nutritional approach, and the wider reach that such an approach will embody.
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